CXA X-Series Signal Analyzer N9000A

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1 CXA X-Series Signal Analyzer N9000A 9 khz to 3.0, 7.5, 13.6, or 26.5 GHz Data Sheet

2 Table of Contents Definitions and Conditions... 3 Frequency and Time Specifications... 4 Amplitude Accuracy and Range Specifications... 6 Dynamic Range Specifications... 8 PowerSuite Measurement Specifications...12 Tracking Generator Specifications Ω Input Specifications...14 General Specifications...15 Inputs and Outputs...16 I/Q Analyzer...18 Related Literature...19 Master the essentials A great low-cost signal analyzer surpasses the basics and delivers crucial functionality. That s the strength of the CXA signal analyzer, the leading low-cost tool for essential signal characterization. Its capabilities provide a foundation for cost-effective testing and seamless integration with the other X-Series models. The CXA is also an excellent teaching tool for RF and microwave technologies and signal analysis. Get must-have capability with X-Series expandability in the CXA and master the essentials. 2

3 Definitions and Conditions Specifications describe the performance of parameters covered by the product warranty and apply to temperature ranges 5 to 50 C, unless otherwise noted. 95th percentile values indicate the breadth of the population (approx. 2 σ) of performance tolerances expected to be met in 95 percent of the cases with a 95 percent confidence, for any ambient temperature in the range of 20 to 30 C. In addition to the statistical observations of a sample of instruments, these values include the effects of the uncertainties of external calibration references. These values are not warranted. These values are updated occasionally if a significant change in the statistically observed behavior of production instruments is observed. Typical describes additional product performance information that is not covered by the product warranty. It is performance beyond specifications that 80 percent of the units exhibit with a 95 percent confidence level over the temperature range 20 to 30 C. Typical performance does not include measurement uncertainty. Nominal values indicate expected performance, or describe product performance that is useful in the application of the product, but are not covered by the product warranty. The analyzer will meet its specifications when: It is within its calibration cycle Under auto couple control, except when Auto Sweep Time Rules = Accy The analyzer has been stored at an ambient temperature within the allowed operating range for at least two hours before being turned on; if it had previously been stored at a temperature range inside the allowed storage range, but outside the allowed operating range The analyzer has been turned on at least 30 minutes with Auto Align set to normal, or, if Auto Align is set to off or partial, alignments must have been run recently enough to prevent an Alert message; if the Alert condition is changed from Time and Temperature to one of the disabled duration choices, the analyzer may fail to meet specifications without informing the user For more information This CXA signal analyzer data sheet is a summary of the complete specifications and conditions for N9000A CXA signal analyzers (including N9000AEP Express CXA signal analyzers), which are available in the CXA Signal Analyzer Specification Guide. The CXA Signal Analyzer Specification Guide can be obtained on the web at: cxa_manuals For ordering information, refer to the CXA Signal Analyzer Configuration Guide ( EN). 3

4 Frequency and Time Specifications Frequency range DC coupled AC coupled Option 503 NA 9 khz to 3.0 GHz Option 507 NA 9 khz to 7.5 GHz Option khz to 13.6 GHz 10 MHz to 13.6 GHz Option khz to 26.5 GHz 10 MHz to 26.5 GHz Band LO multiple (N) AC coupled RF (Option 503, 507) khz to 3.0 GHz to 3.80 GHz to 4.55 GHz to 5.30 GHz to 6.05 GHz to 6.80 GHz to 7.50 GHz Band LO multiple (N) AC coupled MW (Option 513, 526) khz to 3.08 GHz to 7.58 GHz to 9.55 GHz to GHz to GHz to GHz to GHz to GHz to GHz to GHz to GHz to GHz Frequency reference Accuracy Aging rate Temperature stability 20 to 30 C Full temperature range Achievable initial calibration accuracy Example frequency reference accuracy (with Option PFR) 1 year after last adjustment Residual FM Option PFR Standard ± [(time since last adjustment x aging rate) + temperature stability + calibration accuracy] Option PFR Standard ± 1 x 10 7 / year ± 1 x 10 6 / year ± 1.5 x 10 7 / 2 years Option PFR ± 1.5 x 10 8 ± 5 x 10 8 Option PFR Standard ± 2 x 10 6 ± 2 x 10 6 Standard ± 4 x 10 8 ± 1.4 x 10 6 = ± (1 x 1 x x x 10 8 ) = ± 1.9 x Hz p-p in 20 ms nominal 10 Hz p-p in 20 ms nominal Frequency readout accuracy (start, stop, center, marker) ± (marker frequency x frequency reference accuracy % x span + 5 % x RBW + 2 Hz x horizontal resolution 1) 1. Horizontal resolution is span/(sweep points 1). 4

5 Marker frequency counter Accuracy Delta counter accuracy Counter resolution ± (marker frequency x frequency reference accuracy Hz) ± (delta frequency x frequency reference accuracy Hz) Hz Frequency span (FFT and swept mode) Range 0 Hz (zero span), 10 Hz to maximum frequency of instrument Resolution Accuracy Swept FFT Sweep time and triggering Range Accuracy Trigger Trigger delay Time gating Gate methods Gate length range (except method = FFT) Gate delay range Gate delay jitter 2 Hz Sweep (trace) point range All spans 1 to Resolution bandwidth (RBW) Range ( 3.01 db bandwidth) Bandwidth accuracy (power) Bandwidth accuracy ( 3.01 db) RBW range Selectivity ( 60 db/ 3 db) ± (0.25 % x span + horizontal resolution) ± (0.10 % x span + horizontal resolution) Span = 0 Hz Span 10 Hz 1 μs to 6000 s 1 ms to 4000 s Span 10 Hz, swept ± 0.01 % nominal Span 10 Hz, FFT ± 40 % nominal Span = 0 Hz ± 1 % nominal Free run, line, video, external 1, RF burst, periodic timer Span = 0 Hz or FFT 150 to +500 ms Span 10 Hz, swept 1 μs to 500 ms Resolution 0.1 μs Gated LO; gated video; gated FFT ns to 5.0 s 0 to s 33.3 ns p-p nominal 1 Hz to 3 MHz (10 % steps), 4, 5, 6, 8 MHz 1 Hz to 750 khz ± 1.0 % (± db) nominal 820 khz to 1.2 MHz (< 3 GHz CF) ± 2.0 % (± db) nominal 1.3 to 2.0 MHz (< 3 GHz CF) ± 0.07 db nominal 2.2 to 3 MHz (< 3 GHz CF) ± 0.15 db nominal 4 to 8 MHz (< 3 GHz CF) ± 0.25 db nominal 1 Hz to 1.3 MHz ± 2 % nominal 4.1:1 nominal EMI bandwidth (CISPR compliant) 200 Hz, 9 khz, 120 khz, 1 MHz (Option EMC or W6141A required) EMI bandwidth (MIL STD 461E compliant) 10 Hz, 100 Hz, 1 khz, 10 khz, 100 khz, 1 MHz (Option EMC or W6141A required) Analysis bandwidth 1 Maximum bandwidth Video bandwidth (VBW) Range Accuracy Measurement speed 2 Local measurement and display update rate Remote measurement and LAN transfer rate Marker peak search Center frequency tune and transfer Measurement/mode switching Option B25 Standard 5 25 MHz 10 MHz 1 Hz to 3 MHz (10 % steps), 4, 5, 6, 8 MHz, and wide open (labeled 50 MHz) ± 6 % nominal 11 ms (90/s) nominal 6 ms (167/s) nominal 5 ms nominal 22 ms nominal 75 ms nominal 1. Analysis bandwidth is the instantaneous bandwidth available around a center frequency over which the input signal can be digitized for further analysis or processing in the time, frequency, or modulation domain. 2. Sweep points = 101.

6 Amplitude Accuracy and Range Specifications Amplitude range Measurement range RF (Option 503, 507) Preamp off 100 khz to 1 MHz Displayed average noise level (DANL) to +20 dbm 1 MHz to 7.5 GHz Displayed average noise level (DANL) to +23 dbm Preamp on 100 khz to 7.5 GHz Displayed average noise level (DANL) to +15 dbm MW (Option 513/526) Preamp off 100 khz to 26.5 GHz Displayed average noise level (DANL) to +23 dbm Preamp on 100 khz to 26.5 GHz Displayed average noise level (DANL) to +23 dbm Input attenuator range RF (Option 503, 507) Standard 0 to 50 db in 10 db steps Option FSA MW (Option 513, 526) Standard Option FSA 0 to 50 db in 2 db steps 0 to 70 db in 10 db steps 0 to 70 db in 2 db steps Maximum safe input level Average total power RF (Option 503, 507) +30 dbm (1 W) Input attenuation 20 db, preamp off 10 dbm (10 mw) Input attenuation 20 db, preamp on MW (Option 513, 526) +30 dbm (1 W) Input attenuation 10 db, preamp off +30 dbm (1 W) Input attenuation 20 db, preamp on Peak pulse power +50 dbm (100 W) < 10 μs pulse width, < 1 % duty cycle, input attenuation 30 db DC volts RF (Option 503, 507) AC coupled ± 50 Vdc MW (Option 513, 526) AC coupled ± 50 Vdc DC coupled ± 0.2 Vdc Display range Log scale Linear scale Scale units 0.1 to 1 db/division in 0.1 db steps 1 to 20 db/division in 1 db steps (10 display divisions) 10 divisions dbm, dbmv, dbμv, dbma, dbμa, V, W, A Frequency response Specification 95th percentile ( 2σ) (10 db input attenuation, 20 to 30 C, σ = nominal standard deviation) RF (Option 503, 507) 9 khz to 10 MHz ± 0.60 db ± 0.45 db 10 MHz to 3 GHz ± 0.75 db ± 0.55 db 3 to 5.25 GHz ± 1.45 db ± 1.00 db 5.25 to 7.5 GHz ± 1.65 db ± 1.20 db MW (Option 513, 526) 9 khz to 10 MHz ± 0.8 db ± 0.5 db 10 MHz to 3 GHz ± 0.65 db ± 0.4 db 3 to 7.5 GHz ± 1.5 db ± 0.5 db 7.5 to 13.6 GHz ± 2.0 db ± 0.8 db 13.6 to 19 GHz ± 2.0 db ± 1.0 db 19 to 26.5 GHz ± 2.5 db ± 1.3 db Preamp on RF (Option 503, 507) (P03, P07) MW (Option 513, 526) (P03, P07, P13, P26) 100 khz to 3 GHz ± 0.70 db 3 to 5.25 GHz ± 0.85 db 5.25 to 7.5 GHz ± 1.35 db 100 khz to 3 GHz ± 0.7 db 3 to 13.6 GHz ± 1.0 db 13.6 to 19 GHz ± 1.1 db 19 to 26.5 GHz ± 2.5 db 6

7 Input attenuation switching uncertainty Specifications Additional information Attenuation > 2 db, preamp off Relative to 10 db (reference setting) 50 MHz (reference frequency) 100 khz to 3.0 GHz 3.0 to 7.5 GHz 7.5 to 26.5 GHz ± 0.32 db ± 0.15 db typical ± 0.30 db nominal ± 0.50 db nominal ± 0.70 db nominal Total absolute amplitude accuracy (10 db attenuation, 20 to 30 C, 1 Hz RBW 1 MHz, input signal 10 to 50 dbm, all settings auto-coupled except Auto Swp Time = Accy, any reference level, any scale, σ = nominal standard deviation) Preamp on (Option P03/P07/P13/P26) At 50 MHz At all frequencies 100 khz to 10 MHz 10 MHz to 2.0 GHz 2.0 to 3.0 GHz ± 0.40 db ± (0.40 db + frequency response) ± 0.60 db (95th Percentile 2σ) ± 0.50 db (95th Percentile 2σ) ± 0.60 db (95th Percentile 2σ) ± (0.39 db + frequency response) nominal Input voltage standing wave ratio (VSWR) ( 10 db attenuation) Option 503, 507 Option 513, MHz to 3 GHz < 1.5 nominal < 1.3 nominal 3 to 7.5 GHz < 2.0 nominal < 1.4 nominal 7.5 to 26.5 GHz N/A < 1.9 nominal Resolution bandwidth switching uncertainty (referenced to 30 khz RBW) 1 Hz to 3 MHz RBW ± 0.15 db 4, 5, 6, 8 MHz RBW ± 1.0 db Reference level Range Log scale Linear scale Accuracy Display scale switching uncertainty Switching between linear and log Log scale/div switching Display scale fidelity 80 dbm input mixer level < 15 dbm 15 dbm input mixer level < 10 dbm 170 to +23 dbm in 0.01 db steps Same as log (707 pv to 3.16 V) 0 db 0 db 0 db ± 0.15 db total ± 0.30 db ± 0.15 db typical Trace detectors Normal, peak, sample, negative peak, log power average, RMS average, and voltage average Preamplifier (Option P03/P07/P13/P26) Frequency range Option P03 Option P07 Option P13 Option P khz to 3.0 GHz 100 khz to 7.5 GHz 100 khz to 13.6 GHz 100 khz to 26.5 GHz Gain 100 khz to 26.5 GHz +20 db nominal Noise figure 100 khz to 26.5 GHz DANL db nominal 7

8 Dynamic Range Specifications 1 db gain compression (two-tone) Total power at input mixer RF (Option 503, 507) Preamp off 50 MHz to 7.5 GHz +2 dbm nominal Preamp on 50 MHz to 7.5 GHz 19 dbm nominal (Option P03/P07) MW (Option 513/526) Preamp off 50 MHz to 7.5 GHz 7.5 to 13.6 GHz 13.6 to 26.5 GHz +7 dbm noiminal +3 dbm noiminal +0 dbm noiminal Preamp on 50 MHz to 26.5 GHz 19 dbm nominal Displayed average noise level (DANL) (Input terminated, sample or average detector, averaging type = Log, 0 db input attenuation, IF Gain = High, 20 to 30 C) Parentheses indicate typical performance Preamplifier OFF Preamplifier ON RF (Option 503/507) 9 khz to 1 MHz ( 120) dbm ( 139) dbm 1 to 10 MHz 130 ( 137) dbm 149 ( 157) dbm 10 MHz to 1.5 GHz 148 ( 150) dbm 161 ( 163) dbm 1.5 to 2.2 GHz 144 ( 147) dbm 160 ( 163)dBm 2.2 to 3 GHz 140 ( 143) dbm 158 ( 161) dbm 3 to 4.5 GHz 137 ( 140) dbm 155 ( 159) dbm 4.5 to 6 GHz 133 ( 136) dbm 152 ( 156) dbm 6 to 7.5 GHz 128 ( 131) dbm 148 ( 152) dbm MW (Option 513/526) 1 to 10 MHz 143, ( 148) dbm 153, ( 158) dbm 10 MHz to 1.5 GHz 147, ( 150) dbm 160, ( 163) dbm 1.5 to 6 GHz 143, ( 147) dbm 158, ( 161) dbm 6 to 7.5 GHz 141, ( 145) dbm 155, ( 160) dbm 7.5 to 13.6 GHz 139, ( 142) dbm 155, ( 160) dbm 13.6 to 20 GHz 134, ( 140) dbm 153, ( 157) dbm 20 to 24 GHz 132, ( 138) dbm 151, ( 155) dbm 24 to 26.5 GHz 124, ( 129) dbm 142 ( 147) dbm Spurious responses RF (Option 503, 507) Residual responses (Input terminated and 0 db attenuation, 20 to 30 C) 200 khz to 7.5 GHz (swept) Zero span or FFT or other frequencies 90 dbm 100 dbm nominal Input related spurious 10 MHz to 7.5 GHz 60 dbc typical MW (Option 513, 526) Tuned frequency (f) Mixer level Response Image responses 10 MHz to 26.5 GHz 10 dbm 60 dbc typical LO-related spurious 10 MHz to 3 GHz 10 dbm 64 dbc typical Other spurious responses First RF order 10 dbm 65 dbc (f 10 MHz from carrier) High RF order (f 10 MHz from carrier) 30 dbm 65 dbc Second harmonic distortion (SHI) Source frequency SHI (nominal) RF/MW (Option 503, 507, 513, 526) 10 MHz to 3.75 GHz +42 dbm MW (Option 513, 526) 3.75 to GHz +54 dbm 8

9 Third-order intermodulation distortion (TOI) Parentheses indicate typical performance RF (Option 503, 507) MW (Option 513/526) Option P03/P07/P13/ P26 Preamp off (Two 20 dbm tones at input mixer spaced by 100 khz, 0 db attenuation, 20 to 30 C) Preamp off (Two 20 dbm tones at input mixer spaced by 100 khz, 0 db attenuation, 20 to 30 C) Preamp on (Two 45 dbm tones at the preamp input, spaced by 100 khz, 0 db attenuation, 20 to 30 C) 10 to 400 MHz +10 (+14) dbm 400 MHz to 3 GHz +13 (+17) dbm 3 to 7.5 GHz +13 (+15) dbm 10 to 500 MHz +11 dbm, (+15) dbm 500 MHz to 2 GHz +12 dbm, (+15) dbm 2 to 3 GHz +11 dbm, (+15) dbm 3 to 7.5 GHz +12 dbm, (+17) dbm 7.5 to 13.6 GHz +11 dbm, (+15) dbm 13.6 to 26.5 GHz +10 dbm, (+14) dbm 10 MHz to 26.5 GHz 8 dbm nominal Nominal dynamic range for Options 503 and Nominal dynamic range at 1 GHz for RF CXA DANL and distortion relative to mixer level (db) DANL (1 Hz RBW) 2nd harmonic distortion 3rd order intermodulation Mixer level (dbm) Figure 1. Nominal dynamic range for Options 503 and 507 Band 0, for second and third order distortion, 10 MHz to 3 GHz -60 Nominal dynamic range bands 1-6 for RF CXA DANL and distortion relative to mixer level (db) Mixer level (dbm) DANL at 5.2 GHz (1 Hz RBW) 2nd harmonic distortion at 3.75 GHz 3rd order intermodulation at 5.2 GHz Figure 2. Nominal dynamic range for Options 503 and 507 Bands 1 to 6, for second and third order distortion, 3 GHz to 7.5 GHz 9

10 Nominal dynamic range for Options 513 and Nominal dynamic range at 1 GHz for RF CXA DANL and distortion relative to mixer level (db) DANL (1 Hz RBW) 2nd harmonic distortion 3rd order intermodulation Mixer level (dbm) Figure 3. Nominal dynamic range for option 513/526, for second and third order distortion, 100 MHz to 26.5 GHz Phase noise 1 Offset Specification Typical Noise sidebands (20 to 30 C, CF = 1 GHz) RF (Option 503, 507) 1 khz 10 khz 100 khz 1 MHz 10 MHz 94 dbc/hz 99 dbc/hz 102 dbc/hz 120 dbc/hz 1. For nominal phase noise values with the RF CXA (Option 503 or 507), refer to Figure dbc/hz nominal 102 dbc/hz 104 dbc/hz 121 dbc/hz 143 dbc/hz nominal Figure 4. Nominal phase noise at different center frequencies for RF CXA (Option 503 or 507) 10

11 Phase noise 1 Offset Specification Typical MW (Option 513, 526) 1 khz 10 khz 100 khz 1MHz 10 MHz 98 dbc/hz 102 dbc/hz 108 dbc/hz 130 dbc/hz 1. For nominal phase noise values with the MW CXA (Option 513 or 526), refer to Figure dbc/hz 110 dbc/hz 110 dbc/hz 130 dbc/hz 145 dbc/hz nominal Figure 5. Nominal phase noise at different center frequencies for MW CXA (Option 513 or 526) 11

12 PowerSuite Measurement Specifications Channel power Amplitude accuracy, W-CDMA or IS95 (20 to 30 C, attenuation = 10 db) Occupied bandwidth Frequency accuracy Adjacent channel power Accuracy, W-CDMA (ACLR) (at specific mixer levels and ACLR ranges) MS BTS Dynamic range (typical) RF (Option 503, 507) MW (Option 513, 526) Offset channel pairs measured 1 to 6 Multiple number of carriers measured Up to 12 Power statistics CCDF Histogram resolution Harmonic distortion Maximum harmonic number Results Intermod (TOI) Burst power Methods Results ± 1.33 db (± 0.61 db 95th percentile) ± [span/1000] nominal Without noise correction With noise correction Without noise correction With noise correction 0.01 db Adjacent ± 0.76 db ± 1.41 db 63 db 66 db 66 db 73 db Alternate ± 0.65 db ± 1.62 db 67 db 72 db 69 db 78 db 10th Fundamental power (dbm), relative harmonics power (dbc), total harmonic distortion in % Measure the third-order products and intercepts from two tones Power above threshold, power within burst width Single burst output power, average output power, maximum power, minimum power within burst, burst width Spurious emission W-CDMA (1 to 3.0 GHz) table-driven spurious signals; search across regions Dynamic range Absolute sensitivity Spectrum emission mask (SEM) cdma2000 (750 khz offset) Relative dynamic range (30 khz RBW) Absolute sensitivity Relative accuracy 3GPP W-CDMA (2.515 MHz offset) Relative dynamic range (30 khz RBW) Absolute sensitivity Relative accuracy 83.9 db 78.4 dbm 67.4 db 93.7 dbm ± 0.09 db 74.3 db 93.7 dbm ± 0.11 db (86.7 db typical) ( 84.4 dbm typical) (72.7 db typical) ( 99.7 dbm typical) (80.3 db typical) ( 99.7 dbm typical) 12

13 Tracking Generator Specifications Output frequency Frequency range Option T03 1 Option T06 1 Resolution Output power level Range Resolution Absolute accuracy (at 50 MHz, 10 dbm, 20 to 30 C) Output flatness (referenced to 50 MHz, 10 dbm, 20 to 30 C) 9 khz to 100 khz 100 khz to 3.0 GHz 3.0 GHz to 6.0 GHz Level accuracy 9 khz to 100 khz 100 khz to 3.0 GHz 3.0 GHz to 6.0 GHz Output power sweep Range Resolution Maximum safe reverse level 9 khz to 3 GHz 9 khz to 6 GHz 1 Hz 50 to 0 dbm 0.1 db ± 0.55 db Specification 95th percentile ( 2σ) ± 1.5 db ± 1.2 db ± 1.5 db 50 to 0 dbm 0.1 db Average total power +30 dbm (1 W) AC coupled ± 50 Vdc Phase noise Noise sidebands (CF = 1 GHz) Spurious outputs (0 dbm output) Harmonic Spurs 100 khz to 3 GHz Offset 10 khz 100 khz 1 MHz < 35 dbc < 30 dbc 3 GHz to 6 GHz Non-harmonic spurs 9 khz to 10 MHz 10 MHz to 6 GHz < 35 dbc Dynamic range Output VSWR 9 khz to 6 GHz < 1.5:1 nominal 1. Not available on microwave CXA (Option 513 or 526). Maximum output power displayed average noise level ± 1.2 db ± 0.8 db ± 1.2 db ± 1.0 db nominal ± 0.5 db nominal ± 0.8 db nominal 102 dbc/hz nominal 104 dbc/hz nominal 120 dbc/hz nominal < 35 dbc nominal 110 dbc nominal 13

14 75 Ω Input Specifications Frequency range Option C75 1 Maximum safe input level Average continuous power or Peak pulse power AC coupled 1 MHz to 1.5 GHz dbmv (0.25 W) +63 dbmv (25 mw) ± 50 Vdc Frequency response (10 db input attenuation) Preamp off 1 MHz to 10 MHz 10 MHz to 1.5 GHz Input attenuation 20 db, preamp off Input attenuation 20 db, preamp on (Option P03/P07) ± 0.6 db nominal ± 0.75 db nominal 1 db gain compression (two-tone) Total power at input mixer Preamp off 50 MHz to 1.5 GHz +57 dbmv nominal Preamp on (Option P03/P07) 50 MHz to 1.5 GHz +35 dbmv nominal Displayed average noise level (DANL) (Input terminated, sample or average detector, averaging type = Log, 0 db input attenuation, IF Gain = High, nominal) Preamp off Preamp on (Option P03/P07) Second harmonic distortion (SHI) Preamp off (Input level dbmv, input attenuation 10 db) Preamp on (Option P03/P07) (Input level dbmv, input attenuation 10 db) Third-order intermodulation distortion (TOI) Preamp off (Two dbmv tones at input mixer spaced by 100 khz, 0 db attenuation) Preamp on (Option P03/P07) (Two dbmv tones at input mixer spaced by 100 khz, 0 db attenuation) Input voltage standing wave ratio (VSWR) 1 to 10 MHz 10 MHz to 1.5 GHz 1 to 10 MHz 10 MHz to 1.5 GHz 89 dbmv 97 dbmv 108 dbmv 113 dbmv 10 to 750 MHz +95 dbmv nominal 10 to 750 MHz +63 dbmv nominal 10 MHz to 1.5 GHz +62 dbmv nominal 10 MHz to 1.5 GHz +40 dbmv nominal Preamp off (10 db attenuation) 1 MHz to 1.5 GHz < 1.4:1 nominal Preamp on (Option P03/P07) 1 MHz to 1.5 GHz < 1.4:1 nominal (0 db attenuation) 1. Not available on microwave CXA (Option 513 or 526). 14

15 General Specifications Temperature range Operating 5 to 50 C Storage 40 to 70 C EMC Complies with European EMC Directive 2004/108/EC IEC/EN or IEC/EN CISPR Pub 11 Group 1, class A AS/NZS CISPR 11:2002 ICES/NMB-001 This ISM device complies with Canadian ICES-001 Cet appareil ISM est conforme à la norme NMB-001 du Canada Safety Complies with European Low Voltage Directive 73/23/EEC, amended by 93/68/EEC IEC/EN nd Edition Canada: CSA C22.2 No USA: UL nd Edition Audio noise Acoustic noise emission LpA < 70 db Operator position Normal position Geraeuschemission LpA < 70 db Am Arbeitsplatz Normaler Betrieb Per ISO 7779 Nach DIN t.19 Environmental stress Samples of this product have been type tested in accordance with the Agilent Environmental Test Manual and verified to be robust against the environmental stresses of storage, transportation, and end-use; those stresses include, but are not limited to, temperature, humidity, shock, vibration, altitude, and power line conditions; test methods are aligned with IEC and levels are similar to MILPRF-28800F Class 3. Power requirements Voltage and frequency (nominal) Power consumption On Standby Display Resolution Size Data storage Internal External Weight (without options) Net Shipping Dimensions Height Width Length 100 to 120 V, 50/60/400 Hz 220 to 240 V, 50/60 Hz 270 W maximum 20 W 1024 x 768, XGA 213 mm (8.4 in.) diagonal (nominal) 80 GB nominal (removable solid state drive) Supports USB 2.0 compatible memory devices 15.4 kg (34.0 lbs) 27.4 kg (60.4 lbs) 177 mm (7.0 in) 426 mm (16.8 in) 368 mm (14.5 in) Warranty The CXA signal analyzer is supplied with a one-year warranty Calibration cycle The recommended calibration cycle is one year; calibration services are available through Agilent service centers 15

16 Inputs and Outputs Front panel RF input RF input (Option C75) RF output (Option T03 or T06) Probe power Voltage/current USB 2.0 ports Master (2 ports) Standard Output current Rear panel 10 MHz out Output amplitude Frequency Ext Ref In Input amplitude range Input frequency Frequency lock range Trigger 1 input Impedance Trigger level range Trigger 1 output Impedance Level Monitor output Format Resolution Noise source drive +28 V (pulsed) SNS Series noise source Analog out USB 2.0 ports Master (4 ports) Standard Output current Slave (1 port) Standard Output current GPIB interface GPIB codes GPIB mode Type-N female, 50 Ω nominal Type-N female, 75 Ω nominal Type-N female, 50 Ω nominal +15 Vdc, ± 7 % at 150 ma max. nominal 12.6 Vdc, ± 10 % at 150 ma max. nominal Compatible with USB 2.0 USB Type-A female 0.5 A nominal BNC female, 50 Ω nominal 0 dbm nominal 10 MHz ± (10 MHz x frequency reference accuracy) BNC female, 50 Ω nominal 5 to 10 dbm nominal 10 MHz ± nominal ± 5 x 10 6 of specified external reference input frequency BNC female > 10 kω nominal 5 to 5 V BNC female 50 Ω nominal 5 V TTL nominal VGA compatible, 15-pin mini D-SUB XGA (60 Hz vertical sync rates, non-interlaced) Analog RGB 1024 x 768 BNC female BNC female Compatible with USB 2.0 USB Type-A female 0.5 A nominal Compatible with USB 2.0 USB Type-B female 0.5 A nominal IEEE-488 bus connector SH1, AH1, T6, SR1, RL1, PP0, DC1, C1, C2, C3, C28, DT1, L4, C0 Controller or device 16

17 Rear panel (continued) LAN TCP/IP interface Standard Sync (reserved for future use) IF output Impedance Wideband IF output, Option CR3 1 Center frequency SA mode or I/Q analyzer Conversion gain Bandwidth Low band High band 1000Base-T RJ45 Ethertwist BNC female SMA female 50 Ω nominal MHz 4 to +7 db (nominal) plus RF frequency response Up to 120 MHz (nominal) Up to 40 MHz (nominal) 1. Not available on microwave CXA (Option 513 or 526). 17

18 I/Q Analyzer Frequency Frequency span Standard instrument Option B25 10 Hz to 10 MHz 10 Hz to 25 MHz Resolution bandwidth (spectrum measurement) Range Overall Span = 1 MHz Span = 10 khz Span = 100 Hz 100 mhz to 3 MHz 50 Hz to 1 MHz 1 Hz to 10 khz 100 mhz to 100 Hz Window shapes Flat top, Uniform, Hanning, Gaussian, Blackman, Blackman-Harris, Kaiser Bessel (K-B 70 db, K-B 90 db and K-B 110 db) Analysis bandwidth Standard instrument Option B25 10 Hz to 10 MHz 10 Hz to 25 MHz IF frequency response (standard 10 MHz IF path) IF frequency response (demodulation and FFT response relative to the center frequency, 20 to 30 C) Center frequency (GHz) Span (MHz) Max. error RMS (nominal) < f ± 0.45 db ± 0.45 db 0.03 db 0.25 db IF phase linearity (deviation from mean phase linearity, nominal) Center frequency (GHz) Span (MHz) Peak-to-peak RMS < f Data acquisition (standard 10 MHz IF path) Time record length Sample rate ADC resolution 4,000,000 IQ sample pairs 30 MSa/s 14 Bits ± 0.5 ± 1.5 Option B25 25 MHz analysis bandwidth IF frequency response (demodulation and FFT response relative to the center frequency, 20 to 30 C) Center frequency (GHz) Span (MHz) Max. error RMS (nominal) to < f to 25 IF phase linearity (deviation from mean phase linearity, nominal) ± 0.45 db ± 0.45 db db 0.65 db Center frequency (GHz) Span (MHz) Peak-to-peak RMS 0.02 f < to 25 ± 0.8 ± < f to 25 ± 1.5 ± 0.4 Data acquisition (B25 IF path) Time record length IQ analyzer Sample rate ADC resolution 4,000,000 IQ sample pairs 90 MSa/s 14 Bits 18

19 Related Literature Literature N9000A CXA X-Series Signal Analyzer - Brochure CXA Signal Analyzer N9000A - Configuration Guide Pub number EN EN For more information or literature resources please visit the web: Web Product page: X-Series measurement applications: X-Series signal analyzers: cdma2000 is a registered certification mark of the Telecommunications Industry Association. Windows and MS Windows are U.S. registered trademarks of Microsoft Corporation. myagilent myagilent A personalized view into the information most relevant to you. LAN extensions for Instruments puts the power of Ethernet and the Web inside your test systems. Agilent is a founding member of the LXI consortium. Agilent Channel Partners Get the best of both worlds: Agilent s measurement expertise and product breadth, combined with channel partner convenience. Three-Year Warranty Agilent s combination of product reliability and three-year warranty coverage is another way we help you achieve your business goals: increased confidence in uptime, reduced cost of ownership and greater convenience. Agilent Advantage Services Accurate measurements throughout the life of your instruments. Agilent Electronic Measurement Group DEKRA Certified ISO 9001:2008 Quality Management System For more information on Agilent Technologies products, applications or services, please contact your local Agilent office. The complete list is available at: Americas Canada (877) Brazil (11) Mexico United States (800) Asia Pacific Australia China Hong Kong India Japan 0120 (421) 345 Korea Malaysia Singapore Taiwan Other AP Countries (65) Europe & Middle East Belgium 32 (0) Denmark Finland 358 (0) France * *0.125 /minute Germany 49 (0) Ireland Israel /544 Italy Netherlands 31 (0) Spain 34 (91) Sweden United Kingdom 44 (0) For other unlisted countries: (BP ) Product specifications and descriptions in this document subject to change without notice. Agilent Technologies, Inc Published in USA, July 4, EN 19

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